Seacor, Inc.
Westwood, NJ 07675
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Non-Inductive Capacitor is rated up to 10,000 pF.
Metallized-polypropylene PGWA Series has wrap-and-fill construction with axial-lead terminations. Dissipation ratings are less than 0.04% and IR is better than 30,000 Kohms. Series features pulse rise time of 600 v/microsec and voltages to 15 KVdc. Seven values are supplied in standard decade sizes as well as special values and sizes. Applications include medical equipment, lasers, hi-voltage...
Read More »Polystyrene Capacitors are still available.
Although polystyrene materials are no longer being fabricated, polystyrene capacitors are still available with operational voltage ratings to 630 V. Available capacities range from 47 pF to 0.1 microfarads and tolerances to one percent and lower. Axial or radial lead terminations are offered.
Read More »Capacitors are designed for high voltage applications.
MVDR Inductive Capacitors feature capacitance range of 500PF and 1000PF, with voltage range from 10 to 15 kV, and capacitance tolerance at Ã-
Read More »Non-Inductive Capacitor is rated up to 10,000 pF.
Metallized-polypropylene PGWA Series has wrap-and-fill construction with axial-lead terminations. Dissipation ratings are less than 0.04% and IR is better than 30,000 Kohms. Series features pulse rise time of 600 v/microsec and voltages to 15 KVdc. Seven values are supplied in standard decade sizes as well as special values and sizes. Applications include medical equipment, lasers, hi-voltage...
Read More »Polystyrene Capacitors are still available.
Although polystyrene materials are no longer being fabricated, polystyrene capacitors are still available with operational voltage ratings to 630 V. Available capacities range from 47 pF to 0.1 microfarads and tolerances to one percent and lower. Axial or radial lead terminations are offered.
Read More »Capacitors are designed for high voltage applications.
MVDR Inductive Capacitors feature capacitance range of 500PF and 1000PF, with voltage range from 10 to 15 kV, and capacitance tolerance at Ã-
Read More »